4.5 Article

Superfluid helium film may greatly increase the storage time of ultracold neutrons in material traps

Journal

PHYSICAL REVIEW C
Volume 104, Issue 5, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevC.104.055501

Keywords

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Funding

  1. Ministry of Science and Higher Education of the Russian Federation [K2-2020-038]
  2. [0033-2019-0001]

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The proposed method involves covering trap walls with liquid helium to reduce losses of ultracold neutrons in material traps. This allows for increased neutron storage time and improved precision in lifetime measurements. Considerations of low temperature and interaction with surface waves are important for using liquid helium for ultracold neutron storage.
We propose a method to increase both the neutron storage time and the precision of its lifetime measurements by at least tenfold. The storage of ultracold neutrons (UCN) in material traps now provides the most accurate measurements of neutron lifetime and is used in many other experiments. The precision of these measurements is limited by the interaction of UCN with the trap walls. We show that covering trap walls with liquid helium may strongly decrease the UCN losses from material traps. He-4 does not absorb neutrons at all. Superfluid He covers the trap walls as a thin film, approximate to 10 nm thick, due to the van der Waals attraction. However, this He film on a flat wall is too thin to protect the UCN from their absorption inside a trap material. By combining the van der Waals attraction with capillary effects we show that surface roughness may increase the thickness of this film much beyond the neutron penetration depth, approximate to 33 nm. Using liquid He for UCN storage requires low temperature, T < 0.5 K, to avoid neutron interaction with He vapor, while the neutron losses because of the interaction with surface waves are small and can be accounted for using their linear temperature dependence.

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